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Bio-inspired accommodating fluidic intraocular lens

机译:生物启发式适应性人工晶状体

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摘要

The invention of intraocular lens (IOL), a substitute for crystalline lens, represents a major advancement in cataract surgery. After about sixty years of IOL development, one key remaining problem is its limited accommodation range compared with natural eyes. To overcome this performance limit, we explore bio-inspired fluidic IOL. By mimicking the working principle of natural eyes, a fluidic intraocular lens can achieve an exceedingly large accommodation range. An experiment on fluidic IOL demonstrated a very high tuning range of 12 D. This accommodation range was achieved with a modest amount of force (0.06 N) and equatorial radius change (0.286 mm), in conditions matching well with the characteristics of aged eyes.
机译:人工晶状体(IOL)的发明,是晶状体的替代物,代表了白内障手术的重大进展。在IOL发展了约60年之后,主要的遗留问题是与自然眼睛相比,其适应范围有限。为了克服此性能限制,我们探索了生物启发的流体IOL。通过模仿自然眼睛的工作原理,流体式人工晶状体可以实现极大的调节范围。流体IOL的实验显示了非常高的12 D调整范围。在适度的力(0.06 N)和赤道半径变化(0.286 mm)的条件下,该调整范围是在与老龄眼睛特征非常匹配的条件下实现的。

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